1 |
Bukhalid, R.A., Takeuchi, T., Labeda, D., and Loria, R. 2002. Horizontal transfer of the plant virulence gene, nec1, and flanking sequences among genetically distinct Streptomyces strains in the diastatochromogenes cluster. Appl. Environ. Microbiol. 68, 738-744.
DOI
|
2 |
Huguet-Tapia, J.C., Lefebure, T., Badger, J.H., Guan, D., Pettis, G.S., Stanhope, M.J., and Loria, R. 2016. Genome content and phylogenomics reveal both ancestral and lateral evolutionary pathways in plant-pathogenic Streptomyces species. Appl. Environ. Microbiol. 82, 2146-2155.
DOI
|
3 |
Joshi, M.V. and Loria, R. 2007. Streptomyces turgidiscabies possesses a functional cytokinin biosynthetic pathway and produces leafy galls. Mol. Plant Microbe Interact. 20, 751-758.
DOI
|
4 |
Kers, J.A., Cameron, K.D., Joshi, M.V., Bukhalid, R.A., Morello, J.E., Wach, M.J., Gibson, D.M., and Loria, R. 2005. A large, mobile pathogenicity island confers plant pathogenicity on Streptomyces species. Mol. Microbiol. 55, 1025-1033.
|
5 |
King, R.R., Lawrence, C.H., Clark, M.C., and Calhoun, L.A. 1989. Isolation and characterization of phtotoxins associated with Streptomyces scabies. J. Chem. Soc. Chem. Commun. 13, 849-850.
|
6 |
Schattner, P., Brooks, A.N., and Lowe, T.M. 2005. The tRNAscan-SE, snoscan and snoGPS web servers for the detection of tRNAs and snoRNAs. Nucleic Acids Res. 33, 686-689.
DOI
|
7 |
Loria, R., Kers, J., and Joshi, M.V. 2006. Evolution of plant pathogenicity in Streptomyces. Annu. Rev. Phytopathol. 44, 469-487.
DOI
|
8 |
Nawrocki, E.P. and Eddy, S.R. 2013. Infernal 1.1: 100-fold faster RNA homology searches. Bioinformatics 29, 2933-2935.
DOI
|